Cross‐linked Triblock Peptide Capsules as Potential Oxygen Carriers

Author:

Feng Huayang1ORCID,Linders Jürgen1ORCID,Cantore Miriam2,Fabrizi Jonas3ORCID,Kirsten Annika1,Myszkowska Sascha1ORCID,Hillen Eva2,Uteschil Florian4,Buchholz Sebastian5,Hermsen Andrea16ORCID,Garvin Maria Davila1,Ferenz Katja Bettina2ORCID,Mayer Christian1ORCID

Affiliation:

1. Institute for Physical Chemistry CeNIDE University of Duisburg-Essen 45141 Essen Germany

2. Institute of Physiology University Hospital Essen CeNIDE University of Duisburg-Essen 45147 Essen Germany

3. Institute of Inorganic Chemistry and Structural Chemistry Heinrich-Heine-Universität Düsseldorf 40225 Düsseldorf Germany

4. Applied Analytical Chemistry University of Duisburg-Essen 45141 Essen Germany

5. Institute for Technical Chemistry University of Duisburg-Essen 45141 Essen Germany

6. Department of Chemistry and ILOC Niederrhein University of Applied Sciences 47805 Krefeld Germany

Abstract

AbstractPerfluorodecalin (PFD)‐filled capsules have been studied for over 15 years as artificial oxygen carriers. However, none of these capsules combines good biocompatibility, good mechanical stability and dispersion stability. Here we propose to use synthetic triblock peptides containing a central block of cysteine units as a cross‐linking shell material for capsules with both good biocompatibility and stability. Together with outer aspartate units and inner phenylalanine units, the resulting amphiphilic triblock peptides can encapsulate PFD efficiently to prepare capsules with a suitable diameter, a certain mechanical strength, a large diffusion constant, fast gas exchange rates, and little cytotoxicity. Given the above advantages, these PFD‐filled peptide capsules are very promising as potential artificial oxygen carriers.

Funder

China Scholarship Council

Publisher

Wiley

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